The Impact Of 5g Technology On Data Center Network Capabilities – Before I tell you the pros and cons of 5G, you should first know “what is 5G?”
Dive directly into the topic without wasting time. After reading this blog, there will be familiar topics including, but for now limited to:
The Impact Of 5g Technology On Data Center Network Capabilities
This generation of mobile network technology works on the same radio frequency as our smartphones. However, this record-breaking technology has left our usual smartphones behind, as it can help us find solutions that were impossible with our usual smartphones. In addition to improving the user experience, 5G also helps the rapid growth of the mobile industry.
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But just as there are two sides to the story, everything has its advantages and disadvantages.
Before we look at the pros and cons of 5G, let’s first look at how the 5G industry has evolved.
The days when you used to play games like snakes and ladders on your phone are long gone. Today is the time for 5G. Thanks to the 5G connection, our lives have become much easier.
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By using 5G bands, we can do so many tasks in such a short time. From 2G to 3G and now to 5G bandwidth, India has come a long way in such a short span of time.
Currently, 5G is limited to only a few people in India and it is estimated that by the end of 2021, the number of people using 5G will increase drastically.
In addition, it is expected that the audience using 5G bands will reach 1.9 million users by the end of 2024.
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Business leaders need to understand that while 5G can create many new and improved innovations, the technology still has its drawbacks.
If we compare 5G with 4G and 4G LTE, 5G comes out at least 100 times faster. The bandwidth of 5G is the fastest of the previous generations. The potential speed of 5G bands can be up to 20 gigabits/s or 20 Gbps. Thanks to 5G networks, we don’t even need minutes to download movies. We can download anything we want in a few seconds. Some studies have shown that with the introduction of 5G bands and 5G connections, download times have decreased from 7 minutes to 6 seconds. If that doesn’t impress you, I don’t know what will!
To better understand this, think about how much time your device takes when you search a website and click on it, and when the information appears on the website.
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The latency of 5G networks is much lower compared to generations of 4G and 4G LTE networks. In one experiment, the calculated delay when using a 5G connection was even less than 5 milliseconds!!
Greater bandwidth: using 5G networks and 5G connections, we can achieve a lot in a very short time, saving a lot of time and effort.
The benefits of 5G networks are not limited to these sectors. 5G connections will serve many more professionals than you could ever imagine.
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Limited global coverage: One of the biggest drawbacks of 5G is that 5G bands are limited to only a few locations. Since cities are much more populated compared to rural areas and slums, network developers will focus on bringing India’s first 5G to big cities. This puts rural areas at an unfair disadvantage and further widens the gap between urban and rural areas.
Small transmission distance: with the combination of frequency and technology, 5G builds up so quickly. Although 5G has such high speeds, compared to 4G and 4G LTE, it takes longer to pass tall buildings due to many obstacles such as huge trees blocking its path. Therefore, in order to provide the speed expected by 5G in India, a large number of 5G network towers need to be installed. This process will be costly and time consuming.
Upload Speed: Although 5G upload speed in India is faster compared to 4G and 4G LTE, it is still not as fast as expected. The download speed of 5G can reach 20 Gbps, but the upload speed still cannot exceed 100 Mbps.
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Weakened device batteries: The 5G network is quite a battery-hungry network. If so, mobile phone developers will have to spend their time developing batteries that can maintain a connection to the 5G network.
As a network developer, it is very important to know the pros and cons of 5G. You should know all the details well before making big investments in this sector. Open Access Policy Institutional Open Access Program Special Topics Guidelines Editorial Process Research and Publication Ethics Fees for Processing Articles Fees Referrals
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By José Maira José Maira Scilit Preprints.org Google Scholar 1, Gonçalo Matos Gonçalo Matos Scilit Preprints.org Google Scholar 2, André Perdigão André Perdigão Scilit Preprints.org Google Scholar 3, 4, José Cação Scholar José Caçlars 3.org Google , Carlos Resende Carlos Resende Scilit Preprints.org Google Scholar 1, Waldir Moreira Waldir Moreira Scilit Preprints.org Google Scholar 1, * , Mário Antunes Mário Antunes Scilit Preprints.org Google Scholar 3, 4, José Quevedo José Quevedo Scil Google Preprints.org Scholar 4, Ruben Moutinho Ruben Moutinho Scilit Preprints.org Google Scholar 1, João Oliveira João Oliveira Scilit Preprints.org Google Scholar 1, Pedro Rendeiro Pedro Rendeiro Scilit Preprints.org Google Scholar 2, Pedro Oliveira Scilit Pedro Oliveira Scilit Google Preprints.3. , Antonio Oliveira-Jr Antonio Oliveira-Jr Scilit Preprints.org Google Scholar 1, 5, * , José Santos José Santos Scilit Preprints.org Google Scholar 3 and Rui L. Aguiar Rui L. Aguiar Scilit Preprints.org Google Scholar 3, 4
Received: May 3, 2023 / Revised: May 25, 2023 / Accepted: May 26, 2023 / Published: May 30, 2023
(This article belongs to the publication The Internet of Industrial Things in Industry 4.0: Research, Applications and New Challenges (Vol. II))
G And Wireless
The next generation of mobile broadband communications, 5G, is seen as the driver of the Industrial Internet of Things (IIoT). The expected increased performance across various indicators in 5G, the flexibility of adapting the network to specific use cases, and the built-in security that guarantees both performance and data isolation led to the appearance of the concept. public network combined with non-public 5G networks (PNI-NPN). These networks can be a flexible alternative to wired Ethernet connections and well-known (although mostly proprietary) protocols common in the industry. With this in mind, this article presents a practical implementation of IIoT over 5G, which consists of various infrastructure and application components. In terms of infrastructure, the implementation includes a 5G Internet of things (IoT) end device that collects sensing data from shop floor devices and the surrounding environment and makes this data available over an industrial 5G network. As for the application, the application includes an intelligent assistant that uses such data to generate valuable information that enables the sustainable operation of the devices. These components have been tested and approved in a real workshop environment at Bosch Termotecnologia (Bosch TT). The results show that 5G has the potential to evolve IIoT towards smarter, more sustainable, greener and greener enterprises.
The industrial complexes create a complex system that includes various technologies scattered throughout the campus. By connecting various devices in the workshop (e.g. sensors, devices, machines) to an industrial network, a wide variety of factory data can be collected (e.g. air quality, vehicle travel routes, noise, movement, energy consumption, location, among others). The collected data is then processed to extract information that plant management can use to make informed decisions. These decisions can improve the efficiency, safety and security of industrial operations, making them more cost-effective and increasing overall productivity. The entire process of connecting industrial devices on the shop floor is called Industrial IoT (IIoT) (a full list of abbreviations is available before the document references). Typical applications
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